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Sanghyun Park

Pohang University of Science and Technology · 情報科学

研究室紹介

Professor Sanghyun Park's research spans computational biology, systems biology, and bioinformatics, with a focus on understanding molecular signaling mechanisms, particularly through scaffold proteins in cellular signaling pathways. His lab develops advanced computational methods for sequence analysis, molecular dynamics simulations, and reaction pathway modeling to uncover the kinetic and structural principles underlying biological processes such as excitation transfer in photosynthesis. The lab also applies systems-level approaches to public health data, integrating personal, social, and environmental factors to study physical activity behaviors. Additionally, they innovate in drug repositioning by leveraging protein localization and network propagation to improve prediction of drug-disease associations.

systems biologymolecular dynamicsdrug repositioningreaction pathwaysscaffold proteins

Research Overview

Papers
404
Total Citations
7,317
Papers (5y)
67
Primary Field
情報科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
67total
2022
2023
2024
2025
2026
Citations per year (5y)
508total
20222023202420252026

Selected Papers

15
1
Article|361 citations·2003
Rewiring MAP Kinase Pathways Using Alternative Scaffold Assembly Mechanisms
Sanghyun Park, Ali Zarrinpar, Wendell A. Lim
SJR Q1Science

How scaffold proteins control information flow in signaling pathways is poorly understood: Do they simply tether components, or do they precisely orient and activate them? We found that the yeast mitogen-activated protein (MAP) kinase scaffold Ste5 is tolerant to major stereochemical perturbations; heterologous protein interactions could functionally replace native kinase recruitment interactions, indicating that simple tethering is largely sufficient for scaffold-mediated signaling. Moreover, b

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|179 citations·2019
Prediction of Alzheimer's disease based on deep neural network by integrating gene expression and DNA methylation dataset
Chihyun Park, Jihwan Ha, Sanghyun Park
SJR Q1Expert Systems with Applications
Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|125 citations·2022
AOBERT: All-modalities-in-One BERT for multimodal sentiment analysis
Kyeong-Hun Kim, Sanghyun Park
SJR Q1Information Fusion
Artificial IntelligenceComputer Science
4
Article|117 citations·2020
Combinatorial feature embedding based on CNN and LSTM for biomedical named entity recognition
Minsoo Cho, Jihwan Ha, Chihyun Park, Sanghyun Park
SJR Q1Journal of Biomedical Informatics
Artificial IntelligenceComputer Science
5
Article|105 citations·2019
Determinants of Ion-Transporter Cancer Cell Death
Sanghyun Park, Seong‐Hyun Park, Ethan N. W. Howe, Ji Young Hyun, Li‐Jun Chen, Inhong Hwang, Gabriela I. Vargas‐Zúñiga, Nathalie Busschaert, Philip A. Gale, Jonathan L. Sessler, Injae Shin
SJR Q1ChemOA
EpidemiologyMedicine
6
Article|92 citations·2007
Choosing weights for simulated tempering
Sanghyun Park, Vijay S. Pande
SJR Q2Physical Review E

Simulated tempering is a method to enhance simulations of complex systems by periodically raising and lowering the temperature. Despite its advantages, simulated tempering has been overshadowed by its parallel counterpart, replica exchange (also known as parallel tempering), due to the difficulty of weight determination in simulated tempering. Here we propose a simple and fast method to obtain near-optimal weights for simulated tempering, and demonstrate its effectiveness in a molecular dynamics

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|91 citations·2001
Segment-based approach for subsequence searches in sequence databases
Sanghyun Park, Sang‐Wook Kim, Wesley W. Chu

Article Share on Segment-based approach for subsequence searches in sequence databases Authors: Sanghyun Park Department of Computer Science, University of California, Los, Angeles, Los Angeles, CA Department of Computer Science, University of California, Los, Angeles, Los Angeles, CAView Profile , Sang-Wook Kim Department of Computer, Information, and Communications Engineering, Kangwon National University, Korea Department of Computer, Information, and Communications Engineering, Kangwon Natio

Signal ProcessingComputer Science
8
Article|84 citations·2019
IMIPMF: Inferring miRNA-disease interactions using probabilistic matrix factorization
Jihwan Ha, Chihyun Park, Chanyoung Park, Sanghyun Park
SJR Q1Journal of Biomedical Informatics
Cancer ResearchBiochemistry, Genetics and Molecular Biology
9
Article|82 citations·2003
Reaction paths based on mean first-passage times
Sanghyun Park, Melih Şener, Deyu Lu, Klaus Schulten
SJR Q1The Journal of Chemical PhysicsOA

Finding representative reaction pathways is important for understanding the mechanism of molecular processes. We propose a new approach for constructing reaction paths based on mean first-passage times. This approach incorporates information about all possible reaction events as well as the effect of temperature. As an application of this method, we study representative pathways of excitation migration in a photosynthetic light-harvesting complex, photosystem I. The paths thus computed provide a

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|76 citations·2020
AGCN: Attention-based graph convolutional networks for drug-drug interaction extraction
Chanhee Park, Jinuk Park, Sanghyun Park
SJR Q1Expert Systems with Applications
Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|74 citations·2021
Understanding of Physical Activity in Social Ecological Perspective: Application of Multilevel Model
Yoongu Lee, Sanghyun Park
SJR Q2Frontiers in PsychologyOA

In the social ecological model, personal characteristics are important determinants of health behaviors, however, multi-dimensional approaches that consider social and physical environments must be utilized to gain a broader picture. Accordingly, this study examines the effects of personal, social, and physical environment variables as factors affecting levels of physical activity (METs). Our findings are based on 72,916 responses from the 2015 Community Health Survey in South Korea. Individual

Applied PsychologyPsychology
12
Article|73 citations·2018
Subcellular Hsp70 Inhibitors Promote Cancer Cell Death via Different Mechanisms
Sanghyun Park, Kyunghwa Baek, In-Su Shin, Injae Shin, Injae Shin, Injae Shin
SJR Q1Cell chemical biologyOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|66 citations·2015
Protein localization vector propagation: a method for improving the accuracy of drug repositioning
Yunku Yeu, Youngmi Yoon, Sanghyun Park
Molecular BioSystems

Identifying alternative indications for known drugs is important for the pharmaceutical industry. Many computational methods have been proposed for predicting unknown associations between drugs and target proteins associated with diseases. To produce better prediction, researchers should not only develop accurate algorithms but identify good features that reflect intracellular systems. In this paper, we proposed a novel method for exploiting protein localization. We generated localization vector

Computational Theory and MathematicsComputer Science
14
Article|63 citations·2000
Genetic selection for dissociative inhibitors of designated protein–protein interactions
Sanghyun Park, Ronald T. Raines
SJR Q1Nature BiotechnologyOA
VirologyImmunology and Microbiology
15
Article|56 citations·2006
Validation of Markov state models using Shannon’s entropy
Sanghyun Park, Vijay S. Pande
SJR Q1The Journal of Chemical Physics

Markov state models are kinetic models built from the dynamics of molecular simulation trajectories by grouping similar configurations into states and examining the transition probabilities between states. Here we present a procedure for validating the underlying Markov assumption in Markov state models based on information theory using Shannon's entropy. This entropy method is applied to a simple system and is compared with the previous eigenvalue method. The entropy method also provides a way

SpectroscopyChemistry

Research Areas

Molecular BiologyComputer Networks and CommunicationsSignal ProcessingArtificial IntelligenceInformation SystemsSociology and Political Science

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